Title :
Utility interconnection and plant distribution protection modernization
Author :
Adams, Christopher ; Steinmetz, J.
Author_Institution :
EE Partners, Midland, TX, USA
Abstract :
This case study documents power system reliability improvement achieved at an industrial gas processing plant using digital multi-function relays. It will review the power system protection schemes in-service at the utility interconnect, plant generation units and distribution feeder breakers. Utility separation techniques and negative sequence directional overcurrent elements are used to improve energy source selection and distribution system selectivity. The study describes protection programming that provides additional safety features and additional layers of equipment control. Methods to monitor electrical system disturbances and protection quality are presented. Derived conclusions show that multi-function microprocessor systems are capable of providing enhanced protection, control and monitoring.
Keywords :
gas industry; natural gas technology; power distribution faults; power distribution protection; power distribution reliability; power system interconnection; relays; safety; digital multifunction relays; distribution feeder breakers; distribution system selectivity; electrical system disturbances monitoring; energy source selection; equipment control; industrial gas processing plant; multifunction microprocessor systems; negative sequence directional overcurrent elements; plant distribution protection; power system protection; power system reliability; utility interconnection; Digital relays; Gas industry; Monitoring; Power generation; Power system interconnection; Power system protection; Power system relaying; Power system reliability; Protective relaying; Safety devices;
Conference_Titel :
Protective Relay Engineers, 2004 57th Annual Conference for
Conference_Location :
College Station, TX, USA
Print_ISBN :
0-7803-8432-6
DOI :
10.1109/CPRE.2004.238419